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一种MIMO-WLAN的跨层速率控制方案

李志杰 方旭明

李志杰, 方旭明. 一种MIMO-WLAN的跨层速率控制方案[J]. 电子与信息学报, 2011, 33(10): 2364-2371. doi: 10.3724/SP.J.1146.2010.01332
引用本文: 李志杰, 方旭明. 一种MIMO-WLAN的跨层速率控制方案[J]. 电子与信息学报, 2011, 33(10): 2364-2371. doi: 10.3724/SP.J.1146.2010.01332
Li Zhi-Jie, Fang Xu-Ming. A Cross-layer Rate Control Method for MIMO-WLAN[J]. Journal of Electronics & Information Technology, 2011, 33(10): 2364-2371. doi: 10.3724/SP.J.1146.2010.01332
Citation: Li Zhi-Jie, Fang Xu-Ming. A Cross-layer Rate Control Method for MIMO-WLAN[J]. Journal of Electronics & Information Technology, 2011, 33(10): 2364-2371. doi: 10.3724/SP.J.1146.2010.01332

一种MIMO-WLAN的跨层速率控制方案

doi: 10.3724/SP.J.1146.2010.01332
基金项目: 

国家自然科学基金(60772085, 61071108)和中央高校基本科研业务费专项资金(SWJTU09ZT14)资助课题

A Cross-layer Rate Control Method for MIMO-WLAN

  • 摘要: 针对下一代无线局域网高速率演进的要求,该文提出一种跨层的多输入多输出(MIMO)系统速率控制算法。首先分析了保证业务误码率的物理层吞吐率最大的速率控制算法存在的不足;然后结合自适应调制编码技术,实现了基于预测的MAC(Media Access Control)层吞吐率最大的跨层速率控制算法。仿真和分析表明算法可以取得近似优化的速率选择结果,能够保证业务的误码率性能,提高业务的吞吐率。该文的算法计算简单、预测准确、运行高效,不仅可以实现闭环速率控制,还可用于帧重传和多业务调度等应用的速率控制。
  • Stacey R, Perahia E, et al.. Specification framework for TGac[S]. IEEE Document: IEEE 802.11-09/0992r11, May 2010,1-1.[2]Paulraj A J, Gore D A, et al.. An overview of MIMO communicationsa key to Gigabit wireless[J].Proceedings of IEEE.2004, 92(2):198-218[3] IEEE Standard for information technology-telecommunications and information exchange between systems-local and metropolitan area networks-specific requirements, Part11: wireless LAN Medium Access Control (MAC) and PHysical Layer (PHY) Specifications, Amendment 5: Enhancements for Higher Throughput[S], Oct. 2009,1-1.[4]Heath R W and Paulraj J. Switching between diversity and multiplexing in MIMO systems[J].IEEE Transactions on Communications.2005, 53(6):962-968[5]Gesbert D, Shafi M, et al.. From theory to practice: an overview of MIMO space-time coded wireless systems[J].IEEE Journal on Selected Areas in Communications.2003, 21(3):281-302[7]Kim J H, Lee K J, et al.. A simple SNR representation method for AMC schemes of MIMO systems with ML detector[J].IEEE Transactions on Communications.2009, 57(10):2971-2976[8]Peng F, Zhang J, et al.. Adaptive modulation and coding for IEEE 802.11n[C]. IEEE Wireless Communications and Networking Conference, Hong Kong, Mar. 2007: 656-661.[9]Stupia I and Giannetti F. A novel link performance prediction method for coded MIMO-OFDM Systems[C]. Wireless Communications and Networking Conference, Budapest, Apr. 2009: 1-5.[10]Jensen T L, Kant S, et al.. Fast link adaptation for MIMO OFDM[J].IEEE Transactions on Vehicular Technology.2010, 59(8):3766-3778[11]Pefkianakis I, Hu Y, et al.. MIMO rate adaptation in 802.11n wireless networks[C]. Proceedings of the Conference on Mobile Computing and Networking, Chicago, Sep. 2010: 257-268.[12]Xia Q, Hamdi M, et al.. Open-loop link adaptation for next-generation IEEE 80211n wireless networks[J].. IEEE Transactions on Vehicular Technology.2009, 58(7):3713-3725[13]Aguilar L and Cidre F. Effective SNR mapping algorithms for link prediction model in 802.16e[C]. Proceedings of Ultra Modern Telecommunications Workshops, St. Petersburg, Oct. 2009: 1-6.[14]Patil S and Veciana D. Measurement-based opportunistic scheduling for heterogeneous wireless systems[J].IEEE Transactions on Communications.2009, 57(9):2745-2753[15] IEEE 802.11 TGac channel model special committee, TGac channel model addendum for IEEE 802.11 WLANs[S]. IEEE Document: IEEE 802.11-09/0308r0, Mar. 2009,1-1.[16]Wang L C, Liu W C, et al.. Joint rate and power adaptation for wireless local area networks in generalized Nakagami fading channels[J].IEEE Transactions on Vehicular Technology.2009, 58(3):1375-1386[18]Wang C, Au E K S, Murch R D, et al.. On the performance of the MIMO zero-forcing receiver in the presence of channel estimation error[J].IEEE Transactions on Wireless Communications.2007, 6(3):805-810[19]Fraidenraich G, Leveque O, and Cioffi J M. On the MIMO channel capacity for the Nakagami-m channel[J].IEEE Transactions on Information Theory.2008, 54(7):3752-3757[20]Heath R W and Love D J. Multi-mode antenna selection for spatial multiplexing systems with linear receivers[J].IEEE Transactions on Signal Processing.2005, 53(8):3042-3056
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出版历程
  • 收稿日期:  2010-12-02
  • 修回日期:  2010-12-02
  • 刊出日期:  2011-10-19

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